Physics Notes Class 11th 12th


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CBSE Class 11 12th Science Notes dan repost
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Heat Transfer Handwritten Notes



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Formula Chart- Nuclei



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Neutron vs proton graph


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Physics nuclear portion
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Application of Electromagnetism in Physics (including the Faraday’s Law)

Faraday’s Law is a fundamental law of electromagnetism. This law has widespread applications in various fields including industries, electrical machines etc. some of the major ones are listed below:

🧿 Electrical Transformers
This is a static device which is used for increasing or decreasing thhe voltage or current. It has its applications in generating station, transmission and distribution system. The transformer works on Faraday's law.

🧿 Electrical Generators
The basic working principle of electrical generator is Faraday's law of mutual induction .Electric generator is used to convert mechanical energy into electrical energy.

🧿 Induction Cookers
The Induction cooker also works on principle of mutual induction. When current flows through the coil of copper wire placed below a cooking container, it produces a changing magnetic field. This alternating or changing magnetic field induces an emf and hence the current in the conductive container.

🧿 Electromagnetic Flow Meters
It is used to measure velocity of blood and certain fluids. When a magnetic field is applied to electrically insulating pipe in which conducting fluids are flowing then according to Faraday's law an electromotive force is induced in it. This induced emf is proportional to velocity of fluid flowing.

🧿 Musical Instruments
It is also used in musical instruments like electric guitar, electric violin etc.

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✅CALORIMETRY - [PHYSICS]✅


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Wave Optics - Formula Chart

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Class 11 12 Science Notes dan repost
◻️ 12th Complete English Grammar
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◻️ Physics all formula book 11th & 12th
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Formula Chart- Ray Optics

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Magnetism hand written notes....

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QUICK REVISION⏰
         FORMULAS

🎯1. Formulas related to force:
🗯️F = ma
🗯️F = kx
🗯️F = m(vf² - vi²/2S)
🗯️F = mv/t
🗯️F = md/t²
🗯️F = m(vf - vi)/t
🗯️F = Area × density × velocity²
🗯️F = 1/2 mv²/d
🗯️F = 1/2 Pv/d
🗯️F = Power/velocity
🗯️Fc = mv²/r
🗯️Fc = mrw²
🗯️Fc/2 = mv²/2r
🗯️Fc = 2K.E/r
🗯️F = Area × Stress
🗯️F = pir² × stress
🗯️F = YA × Strain
🗯️F = YAl/L
🗯️F = pressure × area
🗯️F = change in momentum × time interval
🗯️F = - 2mVx × Vx/2l
🗯️F2 = F1/A1 × A2
🗯️F = qE
🗯️F = kQ/r²
🗯️F = ILB sintheta
🗯️F = q (v × B)
🗯️F = qE + q(v × B)
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​​Biot-Savart Law

In physics, specifically electromagnetism, the Biot–Savart law (/ˈbiːoʊ səˈvɑːr/ or /ˈbjoʊ səˈvɑːr/) is an equation describing the magnetic field generated by a constant electric current. It relates the magnetic field to the magnitude, direction, length, and proximity of the electric current.

The Biot–Savart law is fundamental to magnetostatics. It is valid in the magnetostatic approximation and consistent with both Ampère's circuital law and Gauss's law for magnetism. When magnetostatics does not apply, the Biot–Savart law should be replaced by Jefimenko's equations. The law is named after Jean-Baptiste Biot and Félix Savart, who discovered this relationship in 1820.


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Ray Optics notes 😍

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